Orbital liquid in three dimensional Mott insulator: $LaTiO_3$
Preprint
- 2 August 2000
Abstract
We present a theory of spin and orbital states in Mott insulator $LaTiO_3$. The spin-orbital superexchange interaction between $d^1(t_{2g})$ ions in cubic crystal suffers from a pathological degeneracy of orbital states at classical level. Quantum effects remove this degeneracy and result in the formation of the coherent ground state, in which the orbital moment of $t_{2g}$ level is fully quenched. We find a finite gap for orbital excitations. Such a disordered state of local degrees of freedom on unfrustrated, simple cubic lattice is highly unusual. Orbital liquid state naturally explains observed anomalies of $LaTiO_3$.
Keywords
All Related Versions
- Version 1, 2000-08-02, ArXiv
- Published version: Physical Review Letters, 85 (18), 3950.
This publication has 0 references indexed in Scilit: